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these structures are regulated. However, mechanisms that regulate other abundant alternative DNA conformations, including hairpins, cruciforms, and triplexes, remain poorly understood. In this project, we aim
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. You will be part of the Mathematics of Imaging & AI chair , which has ample expertise in the development of reliable and robust deep learning methods with clinical impact. The project is highly
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, are central to this transition, enabling recyclable, lightweight structures. Research now targets energy-efficient, automated processes and machinery to deliver high-quality components for the next generation
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global CO₂ emissions, largely due to its dependence on clinker—the key constituent of conventional cement. To accelerate the decarbonization of construction materials, the C-Sink Project (funded under
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the decarbonization of construction materials, the C-Sink Project (funded under the EU EIC Pathfinder Challenges 2024) is developing a breakthrough binder system that integrates CO₂-sequestered magnesium silicate
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development measures and structured career parameters, such as: Successful candidates will be offered a postdoctoral position at one of the participating institutes. The postdoctoral positions within
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the opportunity to translate AI innovations directly into patient care. You will be part of the Mathematics of Imaging & AI chair , which has ample expertise in the development of reliable and robust
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the natural product structural classes have not yet been fully characterized. Similarly, most metabolites observed in mass-spectrometric data cannot be fully dereplicated. The key question we seek to answer in
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the natural product structural classes have not yet been fully characterized. Similarly, most metabolites observed in mass-spectrometric data cannot be fully dereplicated. The key question we seek to answer in
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. Your work may involve formulating new models, analysing structural properties, and developing innovative algorithms with both theoretical rigor and practical relevance.